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1.
土壤孔隙结构与土壤微环境和有机碳周转关系的研究进展   总被引:7,自引:1,他引:6  
土壤结构是土壤功能的基础,不仅影响土壤养分的供应、水分的保持及渗透、气体的交换等过程,还为土壤微生物提供了物理生境,并调控土壤有机碳的周转这一关键过程。土壤的孔隙特征能够直接、真实地反映土壤结构的好坏;用土壤的孔隙特征作为试验指标能更好地反映土壤结构对这些过程的调节作用。在此基础上,将高度异质性的土壤孔隙结构同土壤微环境的变化和土壤有机碳的周转过程进行定量分析,对深入了解土壤结构在土壤生态系统中的功能至关重要。因此,着重从土壤孔隙结构对土壤微环境的影响及其与有机碳的关系两方面展开,剖析土壤孔隙结构调控作用下的土壤微环境响应过程,阐述土壤孔隙结构对土壤有机碳周转产生的直接、间接影响,强调土壤孔隙结构在调节土壤有机碳周转进程中的重要作用,并对土壤孔隙结构在调节土壤有机碳周转、植物残体分解及其与微生物协调作用机制等方面研究提出展望。  相似文献   

2.
重庆缙云山典型林分土壤结构分形特征   总被引:6,自引:0,他引:6       下载免费PDF全文
 为了解长江三峡库区森林土壤的物理性质,运用分形原理,研究重庆缙云山4种典型林分林地土壤分形特征,建立土壤结构分维与土壤性质预测模型,运用弹性分析与边际分析,探讨土壤结构分形变化与土壤性质变化的关系。研究表明:土壤机械组成分维、微团聚体组成分维和孔隙组成分维可作为评价土壤结构的指标。不同林分林地土壤颗粒机械组成分维值为2.7~2.9,土壤微团聚体组成分维为2.5~2.8,土壤孔隙组成分维为2.3~2.8。从质地、微团聚体组成和孔隙组成来看,常绿阔叶灌丛土壤结构要明显优于其他林地土壤,而楠竹林最差。不同林分及农地土壤的微团聚体组成、机械颗粒组成和孔隙组成分维与土壤性质存在较明显相关关系,相关系数都在0.5以上。由弹性系数和边际量可以看出,机械分维的影响要大于微团聚体分维和孔隙组分维。这对进一步探讨分形学在土壤结构与土壤性质的应用方面有重要的意义。  相似文献   

3.
贺秀斌  冯桓  冯兆东 《土壤学报》2005,42(2):328-330
土壤结构特征决定了土壤的主要物理性能 ,并影响着土壤生态系统内的许多功能 ,土壤结构的三维结构透视及其定量分析是认识土壤结构和研究土壤结构与功能关系的前提。自 2 0世纪 30年代 ,奥地利学者库比纳开始使用生物显微镜、偏光显微镜和双目实体显微镜 ,研究土壤生物、土壤中的结晶形成物、土壤的结构和孔隙 ,显微观测与探测技术的每一次进步都被应用到土壤微结构的研究 ,产生了土壤学的一支独立学科—土壤微形态学[1~ 7] 。但是 ,原状土壤样品的镜下观测需要复杂的前处理 ,观察的现像多数为二维图像 ,并且需要很多定性的描述和解译才能…  相似文献   

4.
土壤结构定量化研究进展   总被引:27,自引:0,他引:27  
周虎  吕贻忠  李保国 《土壤学报》2009,46(3):501-506
土壤结构是土壤中各种过程进行的物理框架,土壤结构的定量化对土壤水、气、热和土壤生物、化学过程定量化研究具有重要意义。本文主要讨论了土壤结构研究的内容,介绍了土壤结构研究的主要方法,对分形理论、布尔模型和孔隙网络模型等在土壤结构中的应用作了简要的介绍,并且对未来土壤结构定量化研究进行了展望。  相似文献   

5.
土壤孔隙结构定量化研究进展   总被引:16,自引:3,他引:16  
土壤孔隙结构是土壤结构的重要方面,土壤大孔隙引起的优先流和溶质优先迁移与地下水污染、养分流失和灌溉水浪费都有着密切的关系;对土壤孔隙结构的研究具有重要的实践意义和指导作用。本文在综合国内外研究文献的基础上,对前人研究进行系统总结,介绍土壤孔隙结构的获取手段、孔隙结构的表征和模拟方法,并且对今后土壤孔隙结构研究的热点进行了展望,以期为今后进行土壤孔隙结构建模的深入研究提供帮助。  相似文献   

6.
不同种植方式对温室土壤微形态的影响   总被引:3,自引:0,他引:3  
申思雨  刘哲  吕贻忠 《土壤》2016,48(2):355-360
以河北曲周长期定位试验站的温室菜田土壤为研究对象,研究常规种植、无公害种植、有机种植3种不同的种植方式对土壤微形态特征的影响。结果表明:有机种植下,土壤结构疏松;土壤团聚体发育良好,大团聚体数量较多;有机质含量增加100%;土壤孔隙的面积百分比最大,表层孔隙度达到了32%,当量孔径0.1 mm孔隙比例最高,即有助于提高通气孔隙含量,增加土壤的通气性。因此,有机种植条件下土壤结构疏松、发育良好,易形成适合作物生长的良好土壤结构;常规种植条件下,土壤结构较为紧实,发育程度较低;无公害种植条件下,土壤结构发育程度居于两者之间。  相似文献   

7.
氨化秸秆还田对土壤孔隙结构的影响   总被引:7,自引:0,他引:7  
【目的】土壤孔隙性质是土壤结构性的反映,直接影响着土壤的肥力和水分有效性。定量研究氨化秸秆还田对土壤不同大小等级孔隙数量和孔隙分布的影响,可以为土壤培肥提供科学依据。【方法】采用室内试验方法,设置氨化秸秆加入量为土壤总质量的 0(CK)、 0.384%(S1)、 0.575%(S2)、 0.767%(S3)4个处理,室内培养。在培养0、60、120和180 d,取样测定土壤水分特征曲线(SWRC)数据,利用双指数土壤水分特征曲线模型(DE模型,Double-exponential water retention equation),分析氨化秸秆对土壤剩余孔隙、基质孔隙和结构孔隙的影响; 基于DE模型的微分函数,探究不同氨化秸秆处理对土壤孔隙分布的影响。【结果】不同处理的土壤水分特征曲线SWRC实测值和DE模型模拟值之间的均方根误差介于0.0036和0.0041 cm3/cm3之间,R2介于0.998和0.999之间,土壤含水量模拟值和实测值非常接近1 ∶1,表明DE模型可以准确反映添加氨化秸秆后土壤含水量随吸力的变化规律,较准确地估算土壤不同大小等级孔隙数量变化。培养120 d内,氨化秸秆对土壤剩余孔隙、基质孔隙和结构孔隙影响不显著; 培养180 d时,各处理土壤结构孔隙度表现出随着氨化秸秆添加量的增加而增加的趋势; 此时S3对土壤剩余孔隙影响不显著,显著减小了土壤的基质孔隙度(P0.05),极显著地增加了土壤的结构孔隙度(P 0.01)。在孔隙分布中,氨化秸秆促进了土壤已有孔隙向较大孔隙的发育,显著增加了土壤结构孔隙分布数量; 随着氨化秸秆添加量的增加,土壤结构孔隙的分布数量越大,且峰值出现的越早。氨化秸秆增加了土壤中有机质含量; 土壤结构孔隙和总孔隙均与有机质含量呈显著的正相关关系(P 0.05); 有机质可以黏结团聚土壤的矿物颗粒,有效地促进了土壤结构孔隙的发育; 氨化秸秆对土壤孔隙的影响随着时间的进行越来越明显。【结论】氨化秸秆增加了土壤中有机质含量,促进了土壤孔隙结构的发育,增加了土壤的结构孔隙度和总孔隙度,这对改良和培肥土壤、改善土壤耕性具有重要意义。  相似文献   

8.
土壤有机碳库与土壤结构稳定性关系的研究进展   总被引:90,自引:1,他引:90       下载免费PDF全文
彭新华  张斌  赵其国 《土壤学报》2004,41(4):618-623
土壤有机碳的形成抵押了二氧化碳的排放 ,也促进了土壤结构的形成并提高其稳定性。本文介绍土壤结构的层次性和稳定性 ,阐述不同土壤有机碳库影响土壤结构及其性质的作用机制 ,着重评述土壤活性碳库 ,颗粒有机物和可溶性有机物的数量及质量对土壤结构的层次性及其稳定性的影响机制 ,并突出土壤有机物的疏水性对土壤结构及其性质的影响等方面的研究工作。今后应深入研究不同土地利用和土壤管理措施下土壤活性碳库组成与土壤结构稳定性的关系 ;定量描述不同土壤碳库和土壤结构稳定性的形成过程 ;重视研究土壤碳库、土壤稳定性和土壤回复力三者之间的关系 ;深入研究有机碳库的性质影响土壤水分湿润速率的机制 ;应用获得的土壤有机碳库和土壤结构稳定性的新知识 ,完善土壤有机碳和水分循环模型  相似文献   

9.
分形理论在土壤肥力研究中的应用与前景   总被引:3,自引:2,他引:1  
蒋先军  李航  谢德体  魏朝富  熊海灵 《土壤》2007,39(5):677-683
分形理论的提出对于定量描述复杂的、高度不规则的系统特征与机理提供了方法.本文从土壤腐殖质、土壤微生物、土壤团聚体等方面回顾了分形理论在土壤肥力研究中的主要结果:土壤腐殖质胶体在不同条件下形成不同分形特征的聚合物;同一种微生物可能形成具有不同分形特征的结构;土壤中的有机无机胶体在不同条件下凝聚成不同的团聚体,从而形成不同的土壤结构并对其肥力功能产生影响.我们认为分形理论在探索土壤的形成过程和肥力功能上将具有重要的应用前景:如团粒结构体的形成可能是由土壤胶体分形凝聚而成;土壤中的活性有机质有逐渐老化的现象,可能和腐殖质胶体由结构疏松的分形结构向普通团聚体过渡的过程有关;土壤微生物在不同微环境下具有不同的分形特征,可以推测在各种土壤过程(包括物理、化学以及生物化学过程)中它们的功能也可能是不一样的.此外,土壤结构的开放程度决定孔隙、水分以及空气的分布,从而决定了微生物的生存空间.所以土壤结构体对微生物空间分布的影响也是将来该领域值得研究的内容之一.  相似文献   

10.
农田土壤孔隙及其影响因素研究进展   总被引:6,自引:1,他引:5  
《土壤通报》2015,(1):233-238
土壤孔隙是土壤结构的重要组成部分,是衡量土壤质量的重要指标之一。土壤孔隙的数量及大小分布直接决定着土壤的透气性、持水保水性能以及作物根系在土壤空间的伸展,间接影响土壤的肥力和作物产量。基于前人研究基础,系统介绍了土壤孔隙的类型和分类方法、定量研究技术及其主要的影响因素,并对未来土壤孔隙研究的重点进行了展望,以期为今后土壤孔隙结构的深入研究提供帮助,指导人们采取合理的农业管理措施。  相似文献   

11.
Protecting soil structure against compaction—proposed solutions to safeguard agricultural soils To safeguard the ecological soil functions and the functions linked to human activities, measures against harmful changes to the soil are required, in line with the precautionary principle. The German Federal Soil Protection Act sets obligations for precaution in agricultural land use and, if harmful changes to the soil are foreseeable, measures for averting a danger. The results of a research project of the Federal Environmental Agency show that it is possible to describe an impairment of the soil structure, using methods of soil analysis. But this as a sole information would not qualify for the identification of harmful changes to the soil in the context of the Soil Protection Act, which requires an assessment of the severity of disruption of soil functions and the respective subject of protection. This would make additional soil investigations on site mandatory. Approaches in agricultural engineering and soil physics have introduced procedures to preserve the soil structure, in accordance with the precautionary principle. But these procedures have different goals and different ranges of application and hence offer partial solutions to safeguard against soil compaction. The assessment model of “trafficability by measuring the rut depth” provides information about the compaction status of the soil under applied conditions for farming gear, without providing detailed information about affected soil layers. The soil‐physical model of classifying soils into “risk classes for harmful soil compaction” focuses on the relationship between topsoil compaction and crop yields. The soil‐physical models “precompression stress” and “loading ratio” provide information for the assessment of subsoil compaction and a prognosis of a possible impairment of the soil structure at the water content of field capacity. It is necessary to validate the individual models with additional regional data about soil structure before a final assessment of the prognoses is made.  相似文献   

12.
In southern China, collapsing gully erosion produces massive deposits of sediment on the plough layer of alluvial fan farmland, leading to reduced nutrients, increased erodibility, and even desertification. The aim of this study was to investigate soil erodibility (the factor K in the universal Soil Loss Equation, USLE) and physicochemical properties of the alluvial fans of the most severe collapsing gully erosion areas (Hubei, Jiangxi, Fujian, and Guangdong provinces) in southern China. The soils of the collapsing gully alluvial fans had a higher bulk density, but a lower total porosity, saturated water content, and silt and clay fractions than the control (CK) soils from the farmland without desertification. Soil quality gradually decreased from fan edge to fanhead. Significant decreases were found in soil pH, organic matter, cation exchange capacity, and total potassium, nitrogen, and phosphorus, as well as available nitrogen, phosphorus, and potassium, resulting in a gradual decrease in soil nutrients from the fanedge to the fanhead. Soil erodibility was greatest in the fanhead, and soil erodibility K values of the alluvial fans were 53.71%, 66.28%, 67.53%, and 71.68 % greater than that in those of the CK soils of Hubei, Jiangxi, Fujian, and Guangdong, respectively, indicating a significant correlation between the soil erodibility K values and physicochemical properties, particularly sand fraction and organic matter content. The results provide new insights into the relationship between soil physicochemical properties and erodibility of alluvial fans, and suggest that improving soil structure might increase soil fertility in the collapsing gully alluvial fan farmland.  相似文献   

13.
The concept of soil health has been extensively reviewed in the scientific literature, but there is only patchy and inconsistent information available to farmers and growers who are concerned about the declining condition of their soils and are looking for appropriate test methods and management interventions to help reverse it. Although there are well‐established laboratory methods for soil chemical analysis, and a range of laboratory and field methods for measuring soil physical properties, only now are methods starting to emerge for soil biological analysis. This study provides an overview of the methods that are currently available commercially (or are close to commercialization) for farmers and growers in the UK. We examine the science underpinning the methods, the value of the information provided and how farmers and advisors can use results from such assessments for informed decision‐making in relation to soil management.  相似文献   

14.
15.
土壤因子研究综述   总被引:4,自引:0,他引:4  
介绍了国内外土壤因子的研究方法及研究成果,指出我国目前土壤因子研究中存在的问题,并结合我国土壤因子研究现状,认为继续土壤水蚀机理的研究是今后土壤因子研究的内容之一,同时,随着GIS和RS技术发展,应用GIS和RS技术研究区域土壤因子也将成为潮流。  相似文献   

16.
X. Y. WANG  Y. ZHAO  R. HORN 《土壤圈》2010,20(1):43-54
Depth distribution of soil wettability and its correlations with vegetation type, soil texture, and pH were investigated under various land use (cropland, grassland, and forestland) and soil management systems. Wettability was evaluated by contact angle with the Wilhelmy plate method. Water repellency was likely to be present under permanently vegetated land, but less common on tilled agricultural land. It was mostly prevalent in the topsoil, especially in coarse-textured soils, and decreased in the subsoil. However, the depth dependency of wettability could not be derived from the investigated wide range of soils. The correlation and multiple regression analysis revealed that the wettability in repellent soils was affected more by soil organic carbon (SOC) than by soil texture and pH, whereas in wettable soils, soil texture and pH were more effective than SOC. Furthermore, the quality of SOC seemed to be more important in determining wettability than its quantity, as proofed by stronger hydrophobicity under coniferous than under deciduous forestland. Soil management had a minor effect on wettability if conventional and conservation tillage or different grazing intensities were considered.  相似文献   

17.
设施栽培下原状土与扰动土水分特性的试验研究   总被引:1,自引:0,他引:1  
以四川省双流县设施栽培土壤为研究对象,对其原状土与扰动土的土壤水分特征曲线、水分物理性质和比水容量等项目进行了研究。结果表明,扰动土水分特征曲线总体变化趋势与原状土较为一致。在低吸力阶段,相同吸力条件下扰动土含水量高于原状土,在高吸力阶段两者差异较小。扰动土毛管孔隙度、总孔度和凋萎含水量在剖面上的总体变化趋势与原状土较为一致。扰动土不同土层田间持水量和有效水含量差异较小,原状土的田间持水量和有效水含量均随土层加深而减少。在低吸力阶段,相同吸力条件下扰动土比水容量远高于原状土,但随土壤水吸力增加,扰动土比水容量变化趋势逐渐与原状土一致。  相似文献   

18.
植物的固土抗蚀作用大小与其根系密切相关,而根系特征决定了根的固土抗蚀作用的发挥,本文以相同基质下构树和顶坛花椒不同特征的根系为研究对象.通过研究根系特征与土壤抗冲性、抗蚀性、抗拉性、紧实度的关系,结果表明,苗期根系能强化土壤抗冲性,构树苗、顶坛花椒苗根系强化值大小分别为78.01>77.71;根系可提高土壤抗蚀性,其抗蚀性强弱为.构树苗>顶坛花椒苗>对照,构树、顶坛花椒、对照试验的土壤水稳性指数分别为4.36,3.16,1.67;不同树种根系对土壤的固结能力不同,构树苗生长下的土壤抗拉能力为214.92 N,明显大于顶坛花椒苗生长下的土壤154.87 N;土壤紧实度大小为构树苗>顶坛花椒苗.并采用加权综合指数法综合评价了苗期不同特征植物根系的固土能力强弱,得出构树苗综合指数为1.058.而顶坛花椒苗为0.902.即构树苗的固土能力强于顶坛花椒,以期为今后的水土保持工作提供一定的理论依据.  相似文献   

19.
金沙江干热峡谷中退化的土壤生态系统生物学特征初探   总被引:4,自引:0,他引:4  
Distribution characteristics of soil animals,microorganisms and enzymatic activity were studied in the dry red soil and Vertisol ecosystems with different degradation degrees in the Yuanmou dry hot valley of the Jinsha River,China.Results showed that Hymenoptera,Araneae and Collembola were the dominant groups of soil animals in the polts studied.The numbers of groups and individuals and density of soil animals in the dry red soil series were higher than those in the Vertisol series,and the numbers of individuals and density of soil animals decreased with the degree of soil degradation.Bacteria dominated microbiococnosis not only in the dry red soils but also in the Vertisols.Microbial numbers of the dry red soil series were higher than those of Vertisol series,and decreased with the degree of soil degradation.The activities of catalase,invertase,urease and alkaline phosphatase declined with the degradation degree and showed a significant decline with depth in the profiles of both the dry red soils and the Vertisols,but activities of polyphenol oxidase and acid and neutral phosphatase showed the same tendencies only in the Vertisols.It was concluded that the characteristics of soil animals,microorganisms and enzymatic activity could be used as the bio-indicators to show the degradation degree of the dry red soils and Vertisols.Correlation among these soil bio-indicators was highly significant.  相似文献   

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